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1. Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)

4. Green tea extract decreases muscle pathology and NF-kappaB immunostaining in regenerating muscle fibers of mdx mice.

5. Targeted manipulation of apoptosis in cancer treatment.

6. Impact of injury on posttraumatic stress in survivors seeking counseling after the 1995 bombing in Oklahoma City.

7. Intensity-modulated radiotherapy for squamous cell carcinoma of the anal canal: Efficacy of a low daily dose to clinically negative regions

8. Differential evaluation of neuromuscular injuries to understand re-innervation at the neuromuscular junction.

9. A multiplexed high throughput screening assay using flow cytometry identifies glycolytic molecular probes in bloodstream form Trypanosoma brucei.

10. Low intensity, high frequency vibration training to improve musculoskeletal function in a mouse model of volumetric muscle loss.

13. Chronic hypoxia impairs skeletal muscle repair via HIF-2α stabilization.

14. The Influence of COVID-19 on Patient Mobilization and Injury Attributes in the ICU: A Retrospective Analysis of a Level II Trauma Center.

15. The RNA-binding protein Msi2 regulates autophagy during myogenic differentiation.

16. Limitations in metabolic plasticity after traumatic injury are only moderately exacerbated by physical activity restriction.

17. Tibial bone strength is negatively affected by volumetric muscle loss injury to the adjacent muscle in male mice.

18. Differential effects of Western diet and traumatic muscle injury on skeletal muscle metabolic regulation in male and female mice.

19. Compromised Muscle Properties in a Severe Hypophosphatasia Murine Model.

20. Resistance wheel running improves contractile strength, but not metabolic capacity, in a murine model of volumetric muscle loss injury.

21. Response of terminal Schwann cells following volumetric muscle loss injury.

22. Exploring skeletal muscle tolerance and whole-body metabolic effects of FDA-approved drugs in a volumetric muscle loss model.

23. The bioenergetic "CK Clamp" technique detects substrate-specific changes in mitochondrial respiration and membrane potential during early VML injury pathology.

24. Investigating post-mild traumatic brain injury neuromuscular function and musculoskeletal injury risk: A protocol for a prospective, observational, case-controlled study in service members and active individuals.

25. Lower Extremity Somatosensory Function Throughout Concussion Recovery: A Prospective Cohort Study.

26. Single-Leg Hop Stabilization Throughout Concussion Recovery: A Preliminary Biomechanical Assessment.

27. Imaging mitochondria through bone in live mice using two-photon fluorescence microscopy with adaptive optics.

28. Restricted physical activity after volumetric muscle loss alters whole-body and local muscle metabolism.

29. The role of exerkines on brain mitochondria: a mini-review.

30. Early initiation of electrical stimulation paired with range of motion after a volumetric muscle loss injury does not benefit muscle function.

31. Pharmaceutical Agents for Contractile-Metabolic Dysfunction After Volumetric Muscle Loss.

32. Lower-Extremity Neuromuscular Function Following Concussion: A Preliminary Examination.

33. Sexually Dimorphic Effects of a Western Diet on Brain Mitochondrial Bioenergetics and Neurocognitive Function.

34. In Vivo Measurement of Hindlimb Dorsiflexor Isometric Torque from Pig.

35. Effects of alcohol on skeletal muscle contractile performance in male and female mice.

37. Independent of physical activity, volumetric muscle loss injury in a murine model impairs whole-body metabolism.

38. Mitochondria-cytokine crosstalk following skeletal muscle injury and disuse: a mini-review.

39. Lifelong Ulk1-Mediated Autophagy Deficiency in Muscle Induces Mitochondrial Dysfunction and Contractile Weakness.

40. Spatial frequency metrics for analysis of microscopic images of musculoskeletal tissues.

41. Mitochondrial dysfunction in skeletal muscle of fukutin-deficient mice is resistant to exercise- and 5-aminoimidazole-4-carboxamide ribonucleotide-induced rescue.

42. Autophagy: an essential but limited cellular process for timely skeletal muscle recovery from injury.

43. Musculoskeletal Regeneration, Rehabilitation, and Plasticity Following Traumatic Injury.

44. Mitochondrial-specific autophagy linked to mitochondrial dysfunction following traumatic freeze injury in mice.

45. Five-dimensional two-photon volumetric microscopy of in-vivo dynamic activities using liquid lens remote focusing.

46. PGC-1α overexpression partially rescues impaired oxidative and contractile pathophysiology following volumetric muscle loss injury.

47. Voluntary running protects against neuromuscular dysfunction following hindlimb ischemia-reperfusion in mice.

48. Aggregate mesenchymal stem cell delivery ameliorates the regenerative niche for muscle repair.

49. Transient HIF2A inhibition promotes satellite cell proliferation and muscle regeneration.

50. Early rehabilitation for volumetric muscle loss injury augments endogenous regenerative aspects of muscle strength and oxidative capacity.

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